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    • 2. 发明授权
    • Elongated trace tethers for disk drive head suspension flexures
    • 用于磁盘驱动器头悬挂挠曲的伸长的线绳
    • US09025282B1
    • 2015-05-05
    • US13365443
    • 2012-02-03
    • Mark A. Miller
    • Mark A. Miller
    • G11B5/48G11B21/16
    • G11B5/486G11B5/4833G11B5/4853H05K1/0393H05K3/0061H05K2201/2009
    • An integrated lead flexure for a disk drive head suspension formed from layers of material including a spring metal layer, a conductive material layer and an insulating material layer between the spring metal and conductive material layers. One embodiment includes a gimbal region having flying traces and one or more elongated tethers extending from the spring metal layer and along a distance of the flying traces that is less than the length of the flying traces. Another embodiment includes a load beam spring region traversing portion having unsupported traces and one or more elongated tethers extending from the spring metal layer and along a distance of the unsupported traces that is less than the length of the unsupported traces.
    • 一种由包括弹簧金属层,导电材料层和在弹簧金属与导电材料层之间的绝缘材料层的材料层形成的磁盘驱动器磁头悬架的集成引线挠曲件。 一个实施例包括具有飞行迹线的万向节区域和从弹簧金属层延伸的一个或多个细长系绳,并且沿飞行轨迹的距离小于飞行轨迹的长度。 另一个实施例包括具有不支撑轨迹的负载梁弹簧区域横越部分和从弹簧金属层延伸的一个或多个细长系绳,并且沿着未支撑迹线的距离小于未支撑迹线的长度。
    • 3. 发明授权
    • Swage coupling assembly
    • 金属联轴器组件
    • US08804286B1
    • 2014-08-12
    • US13790609
    • 2013-03-08
    • Seagate Technology LLC
    • Prapan AparimarnJoompondej Bamrungwongtaree
    • G11B5/48G11B21/16
    • G11B5/4833G11B5/4813
    • A mount plate includes a flange having a first surface and an opposing second surface and a boss tower having a swage hole and extending from an area where the boss tower meets the first surface of the flange to an end surface of the boss tower. The boss tower has an inner diameter defining an inner surface of the swage hole, an outer diameter defining a portion of an outer surface of the boss tower and at least one cut-out portion formed in the boss tower along an obliquely angled plane. The cut-out portion intersects with the outer surface at a first area located a first distance from where the boss tower meets the first surface of the flange and intersects with the end surface at a second area located a second distance from the inner diameter. The first distance is less than the second distance.
    • 安装板包括具有第一表面和相对的第二表面的凸缘以及具有挤压孔并从凸台塔与凸缘的第一表面相接触的区域延伸到凸台塔的端面的凸台塔。 凸起塔具有限定模具孔的内表面的内径,限定凸台塔的外表面的一部分的外径和沿倾斜角度的平面形成在凸台塔中的至少一个切口部分。 切口部分与第一区域相交,第一区域位于凸台塔与凸缘的第一表面相接触的第一距离处,并且与位于离内径相距第二距离的第二区域与端面相交。 第一距离小于第二距离。
    • 5. 发明授权
    • Suspension with high conductivity ground layer
    • 具有高导电性地层的悬浮体
    • US08587903B2
    • 2013-11-19
    • US13302887
    • 2011-11-22
    • Eriko AjiokaYoshikazu Soeno
    • Eriko AjiokaYoshikazu Soeno
    • G11B5/48G11B21/16
    • G11B5/4833G11B5/486G11B5/4866
    • A suspension is configured to support a magnetic head slider having a recording head element for recording to a magnetic recording medium and a microwave generating element that applies a high-frequency magnetic field to the magnetic recording medium when recording is conducted by the recording head element. The suspension has a flexure that supports the magnetic head slider, a microwave signal transmission line and a recording signal transmission line. The microwave signal transmission line is connected to the microwave generating element and configured to transmit microwave signals for generating the high-frequency magnetic field. The microwave signal transmission line and the recording signal transmission line are supported between the main body part and the support part, a portion of which has a first lamination structure where a first ground layer is conductive and a first insulating layer supports the microwave signal transmission.
    • 悬架被配置为支撑具有用于记录到磁记录介质的记录头元件的磁头滑块和当由记录头元件进行记录时向磁记录介质施加高频磁场的微波产生元件。 悬架具有支撑磁头滑块,微波信号传输线和记录信号传输线的挠曲。 微波信号传输线连接到微波产生元件,并被配置为发送用于产生高频磁场的微波信号。 微波信号传输线和记录信号传输线被支撑在主体部分和支撑部分之间,其一部分具有第一层压结构,其中第一接地层是导电的,第一绝缘层支撑微波信号传输。
    • 7. 发明申请
    • GROUND FEATURE FOR DISK DRIVE HEAD SUSPENSION FLEXURES
    • 用于磁盘驱动器头部悬挂弹性的接地特征
    • US20130248231A1
    • 2013-09-26
    • US13848544
    • 2013-03-21
    • HUTCHINSON TECHNOLOGY INCORPORATED
    • Kyle T. TOBIAS
    • G11B21/16H05K3/00H05K1/05
    • G11B21/16G11B5/4853H05K1/05H05K3/0011H05K3/282H05K3/421Y10T29/49124
    • Various embodiments concern an electrical interconnect of a head suspension. The electrical interconnect can comprise a spring metal layer and a dielectric layer having an aperture with a portion of the spring metal layer being exposed through the dielectric layer within the aperture. The electrical interconnect can further comprise a trace layer disposed on the dielectric layer and extending into the aperture to connect with the spring metal layer. Part of the spring metal layer within the aperture may not be covered by the trace layer. The exposure of the spring metal layer through the aperture can be due to the width of the trace layer being less than the width of the aperture and/or the exposure can be due to expected misregistration. A polymer covercoat can be applied over the aperture to protect the trace layer from corrosion.
    • 各种实施例涉及磁头悬架的电互连。 电互连可以包括弹簧金属层和具有孔的电介质层,其中弹簧金属层的一部分通过孔内的电介质层露出。 电互连可以进一步包括设置在电介质层上并延伸到孔中以与弹簧金属层连接的迹线层。 孔内的弹簧金属层的一部分可能不被痕量层覆盖。 弹簧金属层通过孔的暴露可能是由于迹线层的宽度小于孔的宽度和/或曝光可能是由于预期的不对准引起的。 聚合物覆盖层可以施加在孔上,以保护痕迹层免受腐蚀。
    • 9. 发明授权
    • Magnetic head suspension with optimized inclination angle
    • 具有优化倾斜角度的磁头悬挂
    • US08446697B2
    • 2013-05-21
    • US13551134
    • 2012-07-17
    • Yasuo FujimotoSatoru Takasugi
    • Yasuo FujimotoSatoru Takasugi
    • G11B5/48G11B21/16G11B5/55G11B21/08
    • G11B5/4833G11B5/4873
    • In a magnetic head suspension according to the present invention, each of paired right and left connecting beams that are positioned on both sides of an open section, with which paired piezoelectric elements are at least partially overlapped in a plan view, in a suspension width direction and connect a proximal end section that is directly or indirectly connected to a main actuator and a distal end section to which the load bending part is connected includes proximal-side and distal-side beams. The distal-side beam is inclined with respect to the proximal-side beam in a plan view such that a connection point between the proximal-side and distal-side beams is located closer to a suspension longitudinal center line relative to a virtual line connecting the proximal end of the proximal-side beam and the distal end of the distal-side beam.
    • 在根据本发明的磁头悬架中,位于开口部分的两侧的成对的左右连接梁中的成对的压电元件在平面图中至少部分地重叠在悬架宽度方向上 并且连接直接或间接地连接到主致动器的近端部分和负载弯曲部分连接的远端部分包括近侧和远侧侧梁。 远侧侧梁在平面图中相对于近侧侧梁倾斜,使得近侧侧梁与远端侧梁之间的连接点相对于虚拟线相对于悬挂纵向中心线定位, 近端侧梁的近端和远端侧梁的远端。
    • 10. 发明授权
    • Head suspension having viscoelastic load point
    • 头部悬挂具有粘弹性载荷点
    • US08259416B1
    • 2012-09-04
    • US12118240
    • 2008-05-09
    • Michael W. DavisMohammed KazemiMark G. LowryAlan D. Maki
    • Michael W. DavisMohammed KazemiMark G. LowryAlan D. Maki
    • G11B5/48G11B21/16
    • G11B5/4826
    • A disk drive head suspension including a load beam having a load beam load point region and a flexure, attached to the load beam, having a flexure load point region. A mass of viscoelastic material is fixedly attached to both load beam load point region and flexure load point region to form a pinned load point. A method for manufacturing a disk drive head suspension of the type having a flexure with a flexure load point region on a load beam with a load beam load point region. The flexure load point region is spaced apart from the load beam load point region. A load point is formed by applying a mass of viscoelastic material to the load point region of at least one of the flexure and the load beam.
    • 一种盘驱动头悬架,其包括具有负载梁加载点区域和连接到负载梁的挠曲件的负载梁,该负载梁具有挠曲载荷点区域。 大量的粘弹性材料固定地连接到负载梁加载点区域和挠曲载荷点区域上以形成固定载荷点。 一种用于在具有负载梁负载点区域的负载梁上制造具有挠曲载荷点区域的挠曲的类型的盘驱动器头悬架的方法。 弯曲载荷点区域与载荷梁载荷点区域间隔开。 通过将粘弹性材料的质量施加到挠曲和负载梁中的至少一个的载荷点区域来形成载荷点。